IP Library › Granted Patent US 12,498,814
Granted Patent B2
US 12,498,814 · App. 18/518,061 · Granted Dec 16, 2025

Touch input device

Inventors: Bonkee Kim (Seongnam-si, KR); Seyeob Kim (Seongnam-si, KR)
Assignee: HiDeep Inc.
G06F3/0416G06F3/0442G06F3/0445G06F3/0446
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Quick Facts
Patent No.
US 12,498,814
App. No.
18/518,061
Granted
Dec 16, 2025
Kind
B2
Abstract

A touch input device includes a touch sensor; and a control unit that controls the touch sensor, wherein the touch sensor includes a plurality of first electrodes and a plurality of second electrodes, the first electrode is disposed along a first direction, and the second electrode is disposed along a second direction different from the first direction, a 2a electrode pattern disposed immediately adjacent to the first electrode, and a 2b electrode pattern disposed at a distance apart by an interval from the first electrode and not immediately adjacent to the first electrode. The control unit controls different driving signals to be applied simultaneously to two second electrodes, wherein the driving signal applied to the 2b electrode pattern is applied to the 2a electrode pattern. The control unit detects the touch position of the object located on the touch sensor based on the signals received from the first electrodes.

Claims (100)

1 . A touch input device comprising:

a touch sensor; and

a control unit which controls the touch sensor,

wherein the touch sensor comprises a plurality of first electrodes and a plurality of second electrodes,

wherein each of the first electrodes are disposed along a first direction,

wherein each of the second electrodes are configured to:

be disposed along a second direction different from the first direction, and

include a 2a electrode pattern disposed immediately adjacent to the first electrode and a 2b electrode pattern disposed not immediately adjacent to the first electrode but spaced apart by a distance,

wherein at least two of the 2a electrode patterns of the second electrode and at least two of the 2b electrode patterns of the second electrode are alternately disposed one by one along the second direction,

wherein the control unit is configured to control such that:

different driving signals to be applied simultaneously to at least two second electrodes among the plurality of second electrodes;

a driving signal to be applied to the 2b electrode pattern; and

the driving signal is a signal of a phase which is reversed by 180 degrees from a driving signal applied to the 2a electrode pattern, and

wherein the control unit is configured to detect a touch position of an object located on the touch sensor based on signals received from the plurality of first electrodes.

2 . The touch input device of claim 1 ,

wherein the control unit is configured to:

output differential signals subtracted from two received signals among the received signals, and

detect the touch position of the object based on the differential signals.

3 . The touch input device of claim 2 ,

wherein the control unit comprises:

an integrator which restores the received signals by integrating the differential signals; and

a processing unit which converts sign of electrostatic capacity change value from negative (−) to positive (+) among the restored received signals.

4 . The touch input device of claim 2 ,

wherein the control unit comprises a baseline adjustment unit to reduce baseline of the differential signals by half.

5 . The touch input device of claim 1 ,

wherein the control unit is configured to control different driving signals to be input simultaneously for all of the plurality of second electrodes.

6 . The touch input device of claim 1 ,

wherein at least a portion of another first electrode disposed adjacent to the first electrode is disposed between the 2b electrode pattern and the first electrode.

7 . The touch input device of claim 1 ,

wherein each of the plurality of first electrodes has a shape extending in a first direction and has a plurality of openings disposed along the first direction,

wherein the 2a electrode patterns of the plurality of second electrodes are disposed within a plurality of openings of odd-numbered first electrodes along the second direction, and

wherein the 2b electrode patterns of the plurality of second electrodes are disposed within a plurality of openings of first electrodes located at even numbers along the second direction, and

further comprising:

first connection patterns electrically connecting the 2a electrode patterns disposed along the second direction; and

second connection patterns electrically connecting the 2b electrode patterns disposed along the second direction.

8 . The touch input device of claim 7 ,

wherein the touch sensor further comprises:

an opening formed in each of the 2a and 2b electrode patterns, and

a dummy pattern disposed within the opening of each of the 2a and 2b electrode patterns.

9 . The touch input device of claim 7 ,

wherein the first connection pattern is disposed so as not to overlap the 2b electrode pattern disposed between two 2a electrode patterns connected by the first connection pattern.

10 . The touch input device of claim 1 ,

wherein each of the plurality of first electrodes has a shape extending in a first direction and has a plurality of openings disposed along the first direction,

wherein the 2a electrode patterns of the plurality of second electrodes are disposed in the plurality of openings of the first electrodes located at odd numbers along the second direction,

wherein the 2b electrode patterns of the plurality of second electrodes are disposed in the plurality of openings of the first electrodes located at even numbers along the second direction,

wherein a portion of the 2a electrode pattern is disposed in one of the two adjacent openings of the odd-numbered first electrode and remainder is disposed in another one of the two openings,

wherein a portion of the 2b electrode pattern is disposed in one of the two adjacent openings of the even-numbered first electrode and remainder is disposed in another one of the two openings, and

wherein the touch input device further comprises:

first connection patterns electrically connecting the 2a receiving electrode patterns disposed along the second direction; and

second connection patterns electrically connecting the 2b electrode patterns disposed along the second direction.

11 . A touch input device comprising:

a touch sensor; and

a control unit which controls the touch sensor,

wherein the touch sensor comprises a plurality of first electrodes and a plurality of second electrodes,

wherein each of the first electrodes are disposed along a first direction,

wherein each of the second electrodes are configured to:

be disposed along a second direction different from the first direction, and

include a 2a electrode pattern forming a mutual capacitance with the first electrode, and a 2b electrode pattern which does not form mutual capacitance with the first electrode,

wherein at least two of the 2a electrode patterns of the second electrode and at least two of the 2b electrode pattern of the second electrodes are alternately disposed one by one along the second direction,

wherein the control unit is configured to control such that:

different driving signals to be applied simultaneously to at least two second electrodes among the plurality of second electrodes;

a driving signal to be applied to the 2b electrode pattern; and

the driving signal is a signal of a phase which is reversed by 180 degrees from a driving signal applied to the 2a electrode pattern, and

wherein the control unit is configured to detect a touch position of an object located on the touch sensor based on signals received from the plurality of first electrodes.

12 . The touch input device of claim 11 ,

wherein the control unit is configured to:

output differential signals subtracted from two received signals among the received signals, and

detect the touch position of the object based on the differential signals.

13 . The touch input device of claim 12 ,

wherein the control unit comprises:

an integrator which restores the received signals by integrating the differential signals; and

a processing unit which converts sign of electrostatic capacity change value from negative (−) to positive (+), among the restored received signals.

14 . The touch input device of claim 12 ,

wherein the control unit comprises a baseline adjustment unit to reduce baseline of the differential signals by half.

15 . The touch input device of claim 11 ,

wherein the control unit is configured to control different driving signals to be input simultaneously for all of the plurality of second electrodes.

16 . The touch input device of claim 11 ,

wherein at least a portion of another first electrode disposed adjacent to the first electrode is disposed between the 2b electrode pattern and the first electrode.

17 . The touch input device of claim 11 ,

wherein each of the plurality of first electrodes has a shape extending in a first direction and has a plurality of openings disposed along the first direction,

wherein the 2a electrode patterns of the plurality of second electrodes are disposed within a plurality of openings of odd-numbered first electrodes along the second direction, and

wherein the 2b electrode patterns of the plurality of second electrodes are disposed within a plurality of openings of first electrodes located at even numbers along the second direction, and

further comprising:

first connection patterns electrically connecting the 2a electrode patterns disposed along the second direction; and

second connection patterns electrically connecting the 2b electrode patterns disposed along the second direction.

18 . The touch input device of claim 17 ,

wherein the touch sensor further comprises:

an opening formed in each of the 2a and 2b electrode patterns, and

a dummy pattern disposed within the opening of each of the 2a and 2b electrode patterns.

19 . The touch input device of claim 17 ,

wherein the first connection pattern is disposed so as not to overlap the 2b electrode pattern disposed between two 2a electrode patterns connected by the first connection pattern.

20 . The touch input device of claim 11 ,

wherein each of the plurality of first electrodes has a shape extending in a first direction and has a plurality of openings disposed along the first direction,

wherein the 2a electrode patterns of the plurality of second electrodes are disposed in the plurality of openings of the first electrodes located at odd numbers along the second direction,

wherein the 2b electrode patterns of the plurality of second electrodes are disposed in the plurality of openings of the first electrodes located at even numbers along the second direction,

wherein a portion of the 2a electrode pattern is disposed in one of the two adjacent openings of the odd-numbered first electrode and remainder is disposed in another one of the two openings,

wherein a portion of the 2b electrode pattern is disposed in one of the two adjacent openings of the even-numbered first electrode and remainder is disposed in another one of the two openings, and

wherein the touch input device further comprises:

first connection patterns electrically connecting the 2a receiving electrode patterns disposed along the second direction; and

second connection patterns electrically connecting the 2b electrode patterns disposed along the second direction.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2023
From: KIM, BONKEE; KIM, SEYEOB
To: HIDEEP INC.
Reel/Frame 065650/0521 →
Priority Claims (2)
KR 10-2022-0158571 · Nov 23, 2022 · national
KR 10-2023-0070109 · May 31, 2023 · national
Continuity (1)
Related Publication 20240168583A1 · May 23, 2024
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